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[Teaching design and practice of human blood type traits in genetics comprehensive laboratory course]. | LitMetric

AI Article Synopsis

  • Comprehensive laboratory courses help students apply theoretical knowledge and develop experiment skills, which are crucial for educational reforms in lab settings.
  • The experiment involves extracting DNA from students' saliva to identify ABO blood type genotypes using molecular genetics techniques, culminating in a class-wide genetic analysis mimicking a Mendelian population.
  • After five years of implementation, the course has successfully integrated molecular and population genetics, providing students with hands-on experience and positive feedback, setting a model for other biology lab courses.

Article Abstract

Comprehensive laboratory courses, which enable students to aptly apply theoretic knowledge and master experiment skills, play an important role in the present educational reform of laboratory courses. We utilized human ABO blood type as the experimental subject, and designed the experiment--"Molecular Genotyping of Human ABO Blood Type and Analysis of Population Genetic Equilibrium". In the experiment, DNA in mucosal cells is extracted from students' saliva, and each student's genotype is identified using a series of molecular genetics technologies, including PCR amplification of target fragments, enzymatic digestion, and electrophoretic separation. Then, taking the whole class as an analogous Mendel population, a survey of genotype frequency of ABO blood type is conducted, followed with analyses of various population genetic parameters using Popgene. Through the open laboratory course, students can not only master molecular genetic experimental skills, but also improve their understanding of theoretic knowledge through independent design and optimization of molecular techniques. After five years of research and practice, a stable experimental system of molecular genetics has been established to identify six genotypes of ABO blood types, namely I(A)I(A), I(A)i, I(B)I(B), I(B)i, I(A)I(B) and ii. Laboratory courses of molecular and population genetics have been integrated by calculating the frequencies of the six genotypes and three multiple alleles and testing population genetic equilibrium. The goal of the open laboratory course with independent design and implementation by the students has been achieved. This laboratory course has proved effective and received good reviews from the students. It could be applied as a genetics laboratory course for the biology majors directly, and its ideas and methods could be promoted and applied to other biological laboratory courses.

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Source
http://dx.doi.org/10.16288/j.yczz.15-414DOI Listing

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